首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Telomeres Cluster De Novo before the Initiation of Synapsis: A Three-dimensional Spatial Analysis of Telomere Positions before and during Meiotic Prophase
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Telomeres Cluster De Novo before the Initiation of Synapsis: A Three-dimensional Spatial Analysis of Telomere Positions before and during Meiotic Prophase

机译:始于突触的端粒从头开始:减数分裂前期和减数分裂前期的端粒位置的三维空间分析

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摘要

We have analyzed the progressive changes in the spatial distribution of telomeres during meiosis using three-dimensional, high resolution fluorescence microscopy. Fixed meiotic cells of maize (Zea mays L.) were subjected to in situ hybridization under conditions that preserved chromosome structure, allowing identification of stage-dependent changes in telomere arrangements. We found that nuclei at the last somatic prophase before meiosis exhibit a nonrandom, polarized chromosome organization resulting in a loose grouping of telomeres. Quantitative measurements on the spatial arrangements of telomeres revealed that, as cells passed through premeiotic interphase and into leptotene, there was an increase in the frequency of large telomere-to-telomere distances and a decrease in the bias toward peripheral localization of telomeres. By leptotene, there was no obvious evidence of telomere grouping, and the large, singular nucleolus was internally located, nearly concentric with the nucleus. At the end of leptotene, telomeres clustered de novo at the nuclear periphery, coincident with a displacement of the nucleolus to one side. The telomere cluster persisted throughout zygotene and into early pachytene. The nucleolus was adjacent to the cluster at zygotene. At the pachytene stage, telomeres rearranged again by dispersing throughout the nuclear periphery. The stagedependent changes in telomere arrangements are suggestive of specific, active telomere-associated motility processes with meiotic functions. Thus, the formation of the cluster itself is an early event in the nuclear reorganizations associated with meiosis and may reflect a control point in the initiation of synapsis or crossing over.
机译:我们已经使用三维,高分辨率的荧光显微镜分析了减数分裂过程中端粒空间分布的逐步变化。玉米(Zea mays L.)的固定减数分裂细胞在保留染色体结构的条件下进行原位杂交,从而鉴定端粒排列的阶段依赖性变化。我们发现减数分裂前最后一个体细胞前期的细胞核显示出一个非随机的,极化的染色体组织,导致端粒的松散分组。端粒空间排列的定量测量表明,随着细胞通过减数分裂前期进入瘦素,大的端粒到端粒距离的频率增加,并且对端粒外围定位的偏向降低。通过瘦素,没有明显的端粒分组的证据,大而单一的核仁位于内部,与核几乎同心。在瘦素末端,端粒从头聚集在核外围,与核仁向一侧的移动相吻合。端粒簇在整个合子期和早期粗线期都持续存在。核仁与合子体处的簇相邻。在粗线期,端粒通过分散在整个核外围而重新排列。端粒排列的阶段依赖性变化提示具有减数分裂功能的特定的,活跃的端粒相关的运动过程。因此,簇本身的形成是与减数分裂相关的核重组的早期事件,并且可能反映突触或交叉启动的控制点。

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